Hoque Monjurul, McDonagh Ciara, Tiwari Brijesh K, Kerry Joseph P, Pathania Shivani
Food Industry Development Department, Teagasc Food Research Centre, Ashtown, D15 KN3K Dublin, Ireland.
School of Food and Nutritional Sciences, University College Cork, T12 R229 Cork, Ireland.
Polymers (Basel). 2022 Jul 25;14(15):3009. doi: 10.3390/polym14153009.
Suitable packaging material in combination with high-pressure processing (HPP) can retain nutritional and organoleptic qualities besides extending the product's shelf life of food products. However, the selection of appropriate packaging materials suitable for HPP is tremendously important because harsh environments like high pressure and high temperature during the processing can result in deviation in the visual and functional properties of the packaging materials. Traditionally, fossil-based plastic packaging is preferred for the HPP of food products, but these materials are of serious concern to the environment. Therefore, bio-based packaging systems are proposed to be a promising alternative to fossil-based plastic packaging. Some studies have scrutinized the impact of HPP on the functional properties of biopolymer-based packaging materials. This review summarizes the HPP application on biopolymer-based film-forming solutions and pre-formed biopolymer-based films. The impact of HPP on the key packaging properties such as structural, mechanical, thermal, and barrier properties in addition to the migration of additives from the packaging material into food products were systemically analyzed. HPP can be applied either to the film-forming solution or preformed packages. Structural, mechanical, hydrophobic, barrier, and thermal characteristics of the films are enhanced when the film-forming solution is exposed to HPP overcoming the shortcomings of the native biopolymers-based film. Also, biopolymer-based packaging mostly PLA based when exposed to HPP at low temperature showed no significant deviation in packaging properties indicating the suitability of their applications. HPP may induce the migration of packaging additives and thus should be thoroughly studied. Overall, HPP can be one way to enhance the properties of biopolymer-based films and can also be used for packaging food materials intended for HPP.
合适的包装材料与高压处理(HPP)相结合,除了能延长食品的保质期外,还能保留其营养和感官品质。然而,选择适合HPP的合适包装材料极为重要,因为加工过程中的高压和高温等恶劣环境会导致包装材料的视觉和功能特性出现偏差。传统上,基于化石的塑料包装是食品HPP的首选,但这些材料对环境造成严重影响。因此,生物基包装系统被认为是基于化石的塑料包装的一种有前途的替代品。一些研究已经仔细研究了HPP对生物聚合物基包装材料功能特性的影响。本综述总结了HPP在生物聚合物基成膜溶液和预制生物聚合物基薄膜上的应用。系统分析了HPP对关键包装性能的影响,如结构、机械、热和阻隔性能,以及添加剂从包装材料向食品中的迁移。HPP可以应用于成膜溶液或预制包装。当成膜溶液暴露于HPP时,薄膜的结构、机械、疏水、阻隔和热特性会得到增强,克服了天然生物聚合物基薄膜的缺点。此外,基于生物聚合物的包装大多是聚乳酸(PLA)基的,在低温下暴露于HPP时,包装性能没有明显偏差,表明其应用的适用性。HPP可能会导致包装添加剂的迁移,因此需要进行深入研究。总体而言,HPP可以是增强生物聚合物基薄膜性能的一种方法,也可用于包装适用于HPP的食品材料。